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Frozen-sequence constrained high-order polar-coded modulation

机译:冻结序列约束的高阶极性编码调制

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摘要

Polar coded modulation (PCM) is one of the most promising approaches towards high spectral efficiency. It is able to provide excellent performance comparing to the conventional turbo coded modulation schemes. In this paper, we consider the design of the PCM schemes with high modulation order, e.g., 256QAM or 1024QAM etc. Different with the legacy PCM of low modulation order, the coded bits in high-order PCM with all-zero frozen-sequence will demonstrate obvious correlations which lead to catastrophic performance loss. In order to evaluate this loss, we introduce a quantitative metric, named the bit conditional mutual information (BCMI), to analyze the correlation. Then a new PCM scheme based on the constrained frozen-sequence is proposed to eliminate the correlations among the coded bits. Theoretical analysis and simulation results show that the proposed scheme can ensure the performance of PCM and significantly outperform that of the turbo coded modulation schemes.
机译:极性编码调制(PCM)是实现高频谱效率的最有前途的方法之一。与传统的turbo编码调制方案相比,它能够提供出色的性能。在本文中,我们考虑了具有高调制阶数的PCM方案的设计,例如256QAM或1024QAM等。与低调制阶数的传统PCM不同,具有全零冻结序列的高阶PCM中的编码位将证明明显的相关性导致灾难性的性能损失。为了评估此损失,我们引入了一种称为位条件互信息(BCMI)的定量度量来分析相关性。然后提出了一种新的基于约束冻结序列的PCM方案,以消除编码比特之间的相关性。理论分析和仿真结果表明,所提方案能够保证PCM的性能,并明显优于Turbo编码调制方案。

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